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首页> 外文期刊>PDA journal of pharmaceutical science and technology >Practical application of the cake-complete, pore-plugging model for sizing normal flow filters.
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Practical application of the cake-complete, pore-plugging model for sizing normal flow filters.

机译:滤饼完整的,堵塞孔的模型在常规流量过滤器尺寸设计中的实际应用。

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Considerable process development efforts are spent selecting and sizing normal flow filters-typically beginning with small-scale experiments on flat sheet membrane samples and then scaling up to pleated membrane capsules and cartridges. Experimentally measuring filter capacity requires long test times; therefore, many scientists perform a short, small-scale test and fit the data to a mechanistic model which is used to extrapolate the filter's capacity. For more than a decade, the most commonly used fouling model has been the standard (or gradual pore-plugging) model. In 2006, Bolton et al. proposed a new model which combined both cake formation and complete pore-plugging (the "cake-complete" model). The authors used this model to fit data sets generated under constant flow and constant pressure conditions on microporous and ultrafiltration membranes. They concluded that the new model could more consistently predict filter performance as it was able to provide good fits of all data sets over a wide range of plugging behavior. This work describes a reliable method for solving the constant flow and constant pressure forms of the cake-complete model and for predicting the initial values of the plugging constants. Additionally, algorithms for determining required filter area to satisfy process conditions (batch volume and batch time) are proposed.
机译:在选择常规流程过滤器并确定其大小时,通常需要进行大量过程开发工作-通常从对平板膜样品进行小规模实验开始,然后扩大到折叠的膜囊和滤芯。实验测量过滤器容量需要较长的测试时间;因此,许多科学家进行了简短的小规模测试,并将数据拟合为用于推断滤波器容量的机械模型。十多年来,最常用的结垢模型是标准(或渐进式堵塞孔)模型。在2006年,Bolton等人。提出了一种新的模型,该模型结合了滤饼形成和完全堵塞孔的功能(“滤饼完全”模型)。作者使用该模型来拟合在恒定流量和恒定压力条件下在微孔和超滤膜上产生的数据集。他们得出结论,新模型可以更一致地预测过滤器性能,因为它能够在广泛的堵塞行为范围内很好地拟合所有数据集。这项工作描述了一种可靠的方法,用于求解蛋糕完整模型的恒定流量和恒定压力形式,并预测堵塞常数的初始值。此外,提出了确定所需过滤面积以满足工艺条件(批量和批量时间)的算法。

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